Division of Bioorganic Chemistry, School of Pharmacy, Saarland University, D-66123 Saarbrucken, Germany.
Universite de Lorraine, CITHEFOR, F-54000 Nancy, France.
Curr Pharm Des. 2019;25(15):1707-1716. doi: 10.2174/1381612825666190701153903.
Selenium is an essential non-metal trace element, and the imbalance in the bioavailability of selenium is associated with many diseases ranking from acute respiratory distress syndrome, myocardial infarction and renal failure (Se overloading) to diseases associated with chronic inflammation like inflammatory bowel diseases, rheumatoid arthritis, and atherosclerosis (Se unload). The only source of selenium is the diet (animal and cereal sources) and its intestinal absorption is limiting for selenocysteine and selenomethionine synthesis and incorporation in selenoproteins. In this review, after establishing the link between selenium and inflammatory diseases, we envisaged the potential of selenium nanoparticles and organic selenocompounds to compensate the deficit of selenium intake from the diet. With high selenium loading, nanoparticles offer a low dosage to restore selenium bioavailability whereas organic selenocompounds can play a role in the modulation of their antioxidant or antiinflammatory activities.
硒是一种必需的非金属微量元素,硒的生物利用度失衡与许多疾病有关,从急性呼吸窘迫综合征、心肌梗死和肾衰竭(硒过量)到与慢性炎症相关的疾病,如炎症性肠病、类风湿关节炎和动脉粥样硬化(硒缺乏)。硒的唯一来源是饮食(动物和谷物来源),其肠道吸收对硒代半胱氨酸和硒代蛋氨酸的合成以及硒蛋白的掺入是有限的。在这篇综述中,在确定了硒与炎症性疾病之间的联系之后,我们设想了硒纳米粒子和有机硒化合物的潜力,以弥补饮食中硒摄入的不足。高硒负载时,纳米粒子以低剂量恢复硒的生物利用度,而有机硒化合物则可以在调节其抗氧化或抗炎活性方面发挥作用。
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